Explosion-proof waste gas analysis room
Technical Field
The utility model relates to an explosion-proof exhaust gas analysis room belongs to exhaust gas analysis equipment technical field.
Background
Waste gas generated in the production of chemical plants needs to be analyzed, detected and post-treated, and can not be discharged until reaching the environmental protection standard. Combustible and explosive gas, combustible dust or an organic solvent which is extremely volatile often exist in the working environment of a large-scale chemical plant, waste gas analysis and treatment equipment of the large-scale chemical plant is complex, a plurality of power distribution equipment are involved and are assembled in a building, a plurality of air conditioning equipment are generally required to be equipped for ensuring the temperature and the humidity of the analysis environment in the building, the cost is high, electric sparks can be generated in the normal working process of the power distribution equipment and the air conditioning equipment, the electric sparks meet the combustible and explosive gas or dust, ignition or combustible detonation can possibly occur, serious accidents are caused, and potential safety hazards exist. The distribution equipment needs to be overhauled when the distribution equipment breaks down, and in order to be safe when the distribution equipment enters a waste gas analysis building, the distribution equipment needs to be completely stopped, and the electric spark is prevented from contacting flammable and explosive gas or dust, so that inconvenience is brought to production. Therefore, there is a need for an explosion-proof exhaust gas analysis room that can effectively isolate the power distribution equipment and air conditioning equipment for exhaust gas analysis from flammable and explosive sites.
SUMMERY OF THE UTILITY MODEL
The utility model provides an explosion-proof exhaust gas analysis room to the above-mentioned problem of prior art.
The utility model provides an above-mentioned technical problem's technical scheme as follows: an explosion-proof waste gas analysis room comprises a detection room, a process control room and an explosion-proof air conditioner; the detection chamber and the process control chamber are separated by a partition wall; an environment monitoring device is arranged in the detection chamber; a hole A is formed in the wall of the detection chamber and is arranged on one side close to the partition wall; a hole B is formed in the partition wall and is close to the hole A; the explosion-proof air conditioner comprises an outer machine, a first indoor machine and a second indoor machine; the outdoor unit is arranged outside the explosion-proof waste gas analysis room; the first indoor unit is arranged in the detection chamber; the second indoor unit is arranged in the process control room; the outdoor unit is connected with the air-conditioning pipeline assembly, and the other end of the air-conditioning pipeline assembly extends into the detection chamber through the hole A; one end of the air conditioner pipeline assembly, which extends into the detection chamber, is divided into a first pipeline and a second pipeline; the first pipeline is connected with a first indoor unit; the second pipeline extends into the process control chamber through the hole B and is connected with a second indoor unit;
a plurality of explosion-proof power distribution instrument cabinets are arranged in the process control chamber; the explosion-proof power distribution instrument cabinet comprises a cabinet body, wherein the cabinet body is provided with a main cabinet and an auxiliary cabinet; the auxiliary cabinet is arranged below one side of the cabinet body, and a positive pressure control system is arranged in the auxiliary cabinet; the main cabinet comprises a first cabinet cavity and a second cabinet cavity, and the first cabinet cavity and the second cabinet cavity are respectively and independently sealed; the second cabinet cavity is arranged above the auxiliary cabinet, and a second cabinet door is arranged in the second cabinet cavity; the first cabinet cavity is arranged at the other side of the cabinet body, and a first cabinet door is arranged in the first cabinet cavity; and a gas transmission pipeline of the positive pressure control system extends into the first cabinet cavity and the second cabinet cavity respectively through the explosion-proof glans.
On the basis of the technical scheme, the utility model discloses a reach the convenience of use and the stability of equipment, can also make following improvement to foretell technical scheme:
further, the detection chamber is provided with a door A; the process control room is provided with a door B; the detection chamber and the process control chamber are independently arranged and do not interfere with each other, so that the explosion-proof effect is ensured.
Furthermore, a warning lamp is arranged outside the process control chamber and above the door B; if an accident happens, dangerous conditions can be found out in time outside the process control room, and countermeasures are taken.
Furthermore, the number of the explosion-proof power distribution instrument cabinets is at least 4.
Furthermore, a plurality of drawer type partition plates are respectively arranged in the first cabinet cavity and the second cabinet cavity; the distribution instrument equipment is convenient to configure.
Furthermore, first cabinet door and second cabinet door on all be equipped with transparent observation window, conveniently observe.
The utility model has the advantages that: the power distribution equipment is arranged in the explosion-proof power distribution instrument cabinet, and the cabinet cavity is always kept at positive pressure, so that electric sparks generated by the power distribution instrument in working are effectively prevented from contacting flammable and explosive substances; each cabinet cavity is independently sealed, all equipment does not need to be shut down during maintenance, the maintenance can be independently performed, and the influence on production is small; the explosion-proof air conditioner is configured to prevent the air conditioner from explosion and fire accidents, the indoor units in the detection chamber and the process control chamber share one outdoor unit, the demand of the system on the explosion-proof air conditioner is reduced, the explosion-proof effect of the air conditioner is guaranteed, and the production and operation cost is reduced.
Drawings
FIG. 1 is a schematic view of the external structure of an explosion-proof waste gas analysis room;
FIG. 2 is a front view of an explosion-proof flue gas analysis house;
FIG. 3 is a schematic view of the internal structure of the explosion-proof exhaust gas analysis room;
fig. 4 is a schematic structural diagram of an explosion-proof power distribution instrument cabinet.
The reference numbers are recorded as follows: 1-detection chamber, 1.1-hole A, 1.2-door A, 2-environment monitoring equipment, 3-process control chamber, 3.1-door B, 4-explosion-proof distribution instrument cabinet, 4.1-main cabinet, 4.1.1-first cabinet cavity, 4.1.1.1-first cabinet door, 4.1.2-second cabinet cavity, 4.1.2.1-second cabinet door, 4.2-auxiliary cabinet, 5-explosion-proof air conditioner, 5.1-outer machine, 5.2-first indoor machine, 5.3-second indoor machine, 5.4-air conditioner pipeline component, 5.4.1-first pipeline, 5.4.2-second pipeline, 6-partition wall and 7-warning lamp.
Detailed Description
The principles and features of the present invention are described below in conjunction with the following drawings, the examples given are only intended to illustrate the present invention and are not intended to limit the scope of the present invention.
Referring to fig. 1-3, an explosion-proof exhaust gas analysis room includes a detection chamber 1, a process control chamber 3, and an explosion-proof air conditioner 5; the detection chamber 1 and the process control chamber 3 are separated by a partition wall 6; an environment monitoring device 2 is arranged in the detection chamber 1; a hole A1.1 is formed in the wall of the detection chamber 1, and the hole A1.1 is formed in one side close to the partition wall 6; a hole B is formed in the partition wall 6 and is arranged close to the hole A1.1; the explosion-proof air conditioner 5 comprises an outdoor unit 5.1, a first indoor unit 5.2 and a second indoor unit 5.3; the outdoor unit 5.1 is arranged outside the explosion-proof waste gas analysis room; the first indoor unit 5.2 is arranged in the detection chamber 1; the second indoor unit 5.3 is arranged in the process control chamber 3; the outdoor unit 5.1 is connected with an air-conditioning pipeline assembly 5.4, and the other end of the air-conditioning pipeline assembly 5.4 extends into the detection chamber 1 through a hole A1.1; one end of the air conditioner pipeline component 5.4 extending into the detection chamber 1 is divided into a first pipeline 5.4.1 and a second pipeline 5.4.2; the first pipeline 5.4.1 is connected with a first indoor unit 5.2; the second pipeline 5.4.2 extends into the process control chamber 3 through the hole B and is connected with a second indoor machine 5.3; at least 4 explosion-proof power distribution instrument cabinets 4 are arranged in the process control room 3; (see fig. 4) the explosion-proof distribution instrument cabinet 4 comprises a cabinet body, wherein the cabinet body is provided with a main cabinet 4.1 and an auxiliary cabinet 4.2; the auxiliary cabinet 4.2 is arranged below one side of the cabinet body, and a positive pressure control system is arranged in the auxiliary cabinet 4.2; the main cabinet 4.1 comprises a first cabinet cavity 4.1.1 and a second cabinet cavity 4.1.2, and the first cabinet cavity 4.1.1 and the second cabinet cavity 4.1.2 are respectively and independently sealed; the second cabinet cavity 4.1.2 is arranged above the auxiliary cabinet 4.2, and the second cabinet cavity 4.1.2 is provided with a second cabinet door 4.1.2.1; the first cabinet cavity 4.1.1 is arranged at the other side of the cabinet body, and the first cabinet cavity 4.1.1 is provided with a first cabinet door 4.1.1.1; the gas transmission pipeline of the positive pressure control system extends into the first cabinet cavity 4.1.1 and the second cabinet cavity 4.1.2 through the explosion-proof glans respectively. A plurality of drawer type partition boards are respectively arranged in the first cabinet chamber 4.1.1 and the second cabinet chamber 4.1.2. Transparent observation windows are arranged on the first cabinet door 4.1.1.1 and the second cabinet door 4.1.2.1.
The detection chamber 1 is provided with a door A1.2; the process control room 3 is provided with a door B3.1. A warning lamp 7 is arranged outside the process control chamber 3, and the warning lamp 7 is arranged above the door B3.1.
The above description is only for the preferred embodiment of the present invention, and is not intended to limit the present invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included within the protection scope of the present invention.